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Application of carbohydrate polymers as corrosion inhibitors for metal substrates in different media: A review

期刊

CARBOHYDRATE POLYMERS
卷 140, 期 -, 页码 314-341

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.carbpol.2015.12.038

关键词

Carbohydrate polymers; Green inhibitors; Polysaccharides; Corrosion; Metal substrates; Corrosion inhibition

资金

  1. Centre of Research Excellence in Corrosion, Research Institute, KFUPM
  2. King Fand University of Petroleum and Minerals (KFUPM)

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Naturally occurring polysaccharides are biopolymers existing as products of biochemical processes in living systems. A wide variety of them have been employed for various material applications; as binders, coatings, drug delivery, corrosion inhibitors etc. This review describes the application of some green and benign carbohydrate biopolymers and their derivatives for inhibition of metal corrosion. Their modes and mechanisms of protection have also been described as directly related to their macromolecular weights, chemical composition and their unique molecular and electronic structures. For instance, cellulose and chitosan possess free amine and hydroxyl groups capable of metal ion chelation and their lone pairs of electrons are readily utilized for coordinate bonding at the metal/solution interface. Some of the carbohydrate polymers reviewed in this work are either pure or modified forms; their grafted systems and nanoparticle composites with multitude potentials for metal protection applications have also been highlighted. Few inhibitors grafted to introduce more compact structures with polar groups capable of increasing the total energy of the surface have also been mentioned. Exudate gums, carboxymethyl and hydroxyethyl cellulose, starch, pectin and pectates, substituted/modified chitosans, carrageenan, dextrin/cyclodextrins and alginates have been elaborately reviewed, including the effects of halide additives on their anticorrosion performances. Aspects of computational/theoretical approach to corrosion monitoring have been recommended for future studies. This non-experimental approach to corrosion could foster a better understanding of the corrosion inhibition processes by correlating actual inhibition mechanisms with molecular structures of these carbohydrate polymers. (C) 2015 Elsevier Ltd. All rights reserved.

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